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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >A novel experimental-numerical approach to modeling machine tool dynamics for chatter stability prediction
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A novel experimental-numerical approach to modeling machine tool dynamics for chatter stability prediction

机译:颤振稳定性预测的机床动力学建模的新型实验数值方法

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摘要

Chatter is one of the main limitations to milling performances. Prediction of such unstable phenomenon via stability lobe diagrams requires the measurement of the Frequency Response Functions (FRFs) for each tool and machine tool setup. This paper presents a hybrid FE-experimental approach to identify tool-tip FRFs with only one set of measurements, taking into account tool change without any other experimental test. Machine tool dynamics is modeled using a Finite Element (FE) approach. Machine, spindle and tool-holder are described by a lumped model characterized by frequency-dependent stiffness, while the tool is FE modeled. Lumped model and tool are connected by means of stiffness matrices extracted using the Craig-Bampton dynamic reduction method. The obtained simplified model of machine tool enables chatter prediction by means of stability lobe diagram for different tool without the need for extensive experimentation. Once a new tool is clamped no other measurements are needed, just the new tool FE model. Experimental validation under different conditions is provided, showing accuracy and reliability of proposed approach.
机译:颤振是铣削性能的主要限制之一。通过稳定性波瓣图预测这种不稳定现象需要针对每种工具和机床设置测量频率响应函数(FRF)。本文提出了一种混合有限元实验方法,该方法仅使用一组测量值即可确定工具提示的FRF,并考虑到工具更换而无需进行任何其他实验测试。机床动力学是使用有限元(FE)方法建模的。机床,主轴和刀架由集总模型描述,该集总模型的特征在于与频率有关的刚度,而刀具则采用有限元建模。集总模型和工具通过使用Craig-Bampton动态缩减方法提取的刚度矩阵连接。所获得的简化的机床模型能够通过稳定性叶图针对不同的工具进行颤动预测,而无需进行大量的实验。一旦夹紧了新工具,就不需要其他测量,只需新工具FE模型即可。提供了在不同条件下的实验验证,表明了所提出方法的准确性和可靠性。

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